论文标题

LA2-XSRXCUO4的伪造边界附近的旋转顺序和超导性之间的竞争:NMR的见解

Competition between spin ordering and superconductivity near the pseudogap boundary in La2-xSrxCuO4: insights from NMR

论文作者

Vinograd, I., Zhou, R., Mayaffre, H., Krämer, S., Ramakrishna, S. K., Reyes, A. P., Kurosawa, T., Momono, N., Oda, M., Komiya, S., Ono, S., Horio, M., Chang, J., Julien, M. -H.

论文摘要

当LA2-XSRXCUO4中的高磁场抑制超导性时,条纹抗磁磁(AFM)阶成为整个pseudogap策略的磁场状态,直到其掺杂p* [M.) Frachet,I。Vinograd等,Nat。物理。 16,1064(2020)]。在自旋晶格松弛率1/T1的139LA NMR测量中检测到了这种状态的玻璃状冻结。在这里,我们基于Bloembergen-Purcell-t-t-ound(BPP)理论,对孔掺杂范围p = x = 0.12-0.171中的1/T1数据进行定量分析,修改为包括强烈空间不良性引起的参数的统计分布。我们观察到旋转波动以在静态电荷顺序发作附近的温度t下放慢速度,总体而言,磁场B的效果可能被视为相当于通过接近p = 0.12掺杂来增强条纹顺序。但是,从详细的角度来看,我们的分析揭示了与通常的场诱导的磁过渡的显着背离。随着B的增加,波动力矩的幅度的持续生长表明,在B-> 0限制中,几乎至关重要的状态,准准静态矩可能限制在涡流等小区域中。此外,涡流核中自旋顺序的成核被证明是针对表征大量自旋冻结的场尺度的值和p依赖性的定量解释。波动力矩的相关时间似乎呈指数依赖于b/t(在研究范围内)。这解释了各种实验表现的时间尺度依赖性,包括为什么在运输测量值中,AFM矩可以在相当大的B和T范围内被认为是静态的。这些结果使高场磁场状态呈现到P*关于推定量子关键性讨论不可或缺的一部分。

When superconductivity is suppressed by high magnetic fields in La2-xSrxCuO4, striped antiferromagnetic (AFM) order becomes the magnetic ground state of the entire pseudogap regime, up to its end at the doping p* [M. Frachet, I. Vinograd et al., Nat. Phys. 16, 1064 (2020)]. Glass-like freezing of this state is detected in 139La NMR measurements of the spin-lattice relaxation rate 1/T1. Here, we present a quantitative analysis of 1/T1 data in the hole-doping range p=x=0.12-0.171, based on the Bloembergen-Purcell-Pound (BPP) theory, modified to include statistical distribution of parameters arising from strong spatial inhomogeneity. We observe spin fluctuations to slow down at temperatures T near the onset of static charge order and, overall, the effect of the field B may be seen as equivalent to strengthening stripe order by approaching p=0.12 doping. In details however, our analysis reveals significant departure from usual field-induced magnetic transitions. The continuous growth of the amplitude of the fluctuating moment with increasing B suggests a nearly-critical state in the B->0 limit, with very weak quasi-static moments possibly confined in small areas like vortex cores. Further, the nucleation of spin order in the vortex cores is shown to account quantitatively for both the value and the p dependence of a field scale characterizing bulk spin freezing. The correlation time of the fluctuating moment appears to depend exponentially on B/T (over the investigated range). This explains the timescale dependence of various experimental manifestations, including why, for transport measurements, the AFM moments may be considered static over a considerable range of B and T. These results make the high-field magnetic ground state up to p* an integral part of the discussion on putative quantum criticality.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源